摘要:
The invention relates to a method for mounting and alignment of an electro-optical apparatus, in which an optic (42) is oriented in three axes (X;Y;Z) relative to a further component (26, 46), in particular a method for alignment of a receiving optic (42) relative to an optical receiver (46). The invention proposes that the optic (42) is first aligned in a first (X) and a second direction (Y) and the optic (42) is subsequently fixed to an optical carrier (40) in the third direction (Z) by means of a welding process. The invention furthermore relates to a measuring device, in particular a distance measuring device (10), aligned according to the method of the invention.
摘要:
The invention relates to a telemeter comprising a measured signal, especially ultrasound and/or radar, that is spread in a divergent manner and a light pointer (12, 14) that is provided with at least one light source (10). According to the invention, several light beam bundles (16, 18, 20, 22, 24, 26) which are spread in a divergent manner in relation to one another can be emitted by means of said light pointer (12), whereby the number of said bundles is limited. The bundles essentially characterise the measured signal with the divergence angle (28) thereof.
摘要:
The invention relates to a telemeter comprising a measured signal, especially ultrasound and/or radar, that is spread in a divergent manner and a light pointer (12, 14) that is provided with at least one light source (10). According to the invention, several light beam bundles (16, 18, 20, 22, 24, 26) which are spread in a divergent manner in relation to one another can be emitted by means of said light pointer (12), whereby the number of said bundles is limited. The bundles essentially characterise the measured signal with the divergence angle (28) thereof.
摘要:
The invention relates to a hand tool module having an interconnection device (12a; 12b) that has an interface (14a; 14b). According to the invention, the interconnection device (12a; 12b) has at least one additional interface (16; 16b) in addition to the interface (14a; 14b) which is intended to bidirectionally exchange at least energy with at least one additional hand tool module (10a; 10b) and/or a hand tool (18a; 18b).
摘要:
The invention relates to a portable power tool with a control device comprising a control unit (12) and a sensor unit (14) for generating a distance signal. The invention provides that the control unit (12) designed for controlling at least one operating parameter of a tool carrying unit according to the distance signal.
摘要:
The invention relates to an optical marking device comprising at least one light source (20,22,24; 32,34,36), and means for producing at least one first optical projection line (26) on a reference surface (10), in addition to means for the production of a second optical projection line (30) on the same reference surface (10), wherein the second optical projection line (30) forms an angle of 90° with the first projection line (26). According to the invention, means (22, 24; 32, 34, 36) are provided in order to produce a third projection line (28) which forms an angle of 45° in relation to the first optical production line (26) and an angle of 45° in relation to the second optical projection line (30). The invention also relates to a tool device comprising one such optical marking device.
摘要:
The invention is based on a hand-held jigsaw, in particular a scrolling jigsaw. It is proposed that control means (10, 100) are provided, by means of which the guiding of a saw blade (12) and/or the hand-held jigsaw along scribe lines (14) can be automated.
摘要:
The invention relates to a distance measuring device, comprising at least one transmitter unit (14, 16), arranged in a housing (10, 12), for emitting a light measuring signal, in particular, a laser beam, at least one receiver unit (20, 22), for receiving a component of the measuring signal reflected from a distant object and a calculating unit. According to the invention, at least one sensor is arranged in the housing (10, 12) by means of which the transmission angle (24) of the light measuring signal may be recorded relative to at least one comparative value.